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Finite Element Analysis. SolidWorks Simulation. RealProjects

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Carlos Aragonés

7:10:15

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  • 1. Welcome.mp4
    01:07
  • 2. About the course.mp4
    01:41
  • 1. Intro to the Finite Element Method.mp4
    06:43
  • 2. CAE Software in the market.mp4
    04:15
  • 3. Inside SolidWorks Simulation.mp4
    07:00
  • 1.1 Suspension Upper Arm.7z
  • 1. Preparing the geometry Pre-Process.mp4
    04:39
  • 2. Preparing the geometry Split Line.mp4
    04:05
  • 3. Preparing the geometry Reference Geometry. Coordinate Systems.mp4
    05:36
  • 4. Material Definition. Create your own Library.mp4
    05:17
  • 5. Boundary Conditions Definition.mp4
    01:31
  • 6. Boundary Conditions Constraints.mp4
    03:05
  • 7. Boundary Conditions Load Cases in a vehicle.mp4
    01:23
  • 8. Boundary Conditions Load Cases in Simulation.mp4
    10:09
  • 9. Meshing. Standard.mp4
    09:39
  • 10. Meshing. Curvature.mp4
    06:28
  • 11. Meshing. Controls.mp4
    07:24
  • 12. Solver. How to choose it.mp4
    02:36
  • 13. Solver. Define and Run the Simulation.mp4
    02:39
  • 14. Results Review Post-Process. PART I.mp4
    08:10
  • 15. Results Review Post-Process. PART II.mp4
    06:44
  • 16. Results Review Post-Process. PART III.mp4
    07:57
  • 17. Duplicate and Compare different Simulations.mp4
    06:29
  • 18. Load Case Manager.mp4
    11:51
  • 1. Shell Elements. Theory.mp4
    03:04
  • 2.1 3Point bending test.7z
  • 2. Shell Elements Pre-Process. Preparing the Surfaces.mp4
    05:43
  • 3. Shell Elements Definition in Simulation.mp4
    04:02
  • 4. Shell Elements. Simulation Set-up.mp4
    03:37
  • 5. Shell Elements. Meshing.mp4
    04:34
  • 6. Shell Elements. Results Review Post-Process.mp4
    07:02
  • 1. Beam Elements. Theory.mp4
    02:36
  • 2.1 Bridge Structure.7z
  • 2. Beam Elements. Geometry Description.mp4
    03:49
  • 3. Beam Elements. Definition in Simulation.mp4
    04:05
  • 4. Beam Elements. Joints.mp4
    06:09
  • 5. Beam Elements. Constraints.mp4
    06:04
  • 6. Beam Elements. External Loads.mp4
    06:26
  • 7. Beam Elements. Meshing.mp4
    05:46
  • 8. Beam Elements. Results Review. Post-Process. Part I.mp4
    06:46
  • 9. Beam Elements. Results Review. Post-Process. Part II.mp4
    03:29
  • 1. BIKE CHASSIS. Project Presentation.mp4
    04:41
  • 2.1 CHASSIS MOTORBIKE.7z
  • 2. BIKE CHASSIS. Geometry Preparation. Part I.mp4
    05:37
  • 3. BIKE CHASSIS. Geometry Preparation. Part II.mp4
    04:46
  • 4. BIKE CHASSIS. Elements Definition and Materials.mp4
    06:02
  • 5. BIKE CHASSIS. Constraints and Contacts Intro.mp4
    09:23
  • 6. BIKE CHASSIS. External Loads. Part I.mp4
    05:42
  • 7. BIKE CHASSIS. External Loads. Part II.mp4
    05:25
  • 8. BIKE CHASSIS. Meshing.mp4
    12:43
  • 9. BIKE CHASSIS. Results Review. Post-Process.mp4
    12:06
  • 10. BIKE CHASSIS. Complete Frequency Analysis.mp4
    17:33
  • 1. TRUCK CHASSIS. Project Presentation.mp4
    05:12
  • 2.1 TRUCK CHASSIS.7z
  • 2. TRUCK CHASSIS. Geometry Preparation. Part I.mp4
    18:53
  • 3. TRUCK CHASSIS. Geometry Preparation. Part II.mp4
    12:17
  • 4. TRUCK CHASSIS. Shell Elements Definition and Materials.mp4
    08:58
  • 5. TRUCK CHASSIS. Constraints and Contacts revision.mp4
    06:46
  • 6. TRUCK CHASSIS. External Loads.mp4
    03:50
  • 7. TRUCK CHASSIS. Meshing and Solver.mp4
    07:39
  • 8. TRUCK CHASSIS. Results Review. Post-Process.mp4
    15:48
  • 1. BUGGY CHASSIS. Project Presentation.mp4
    05:31
  • 2.1 COCKPIT BUGGY.7z
  • 2. BUGGY CHASSIS. Geometry Preparation.mp4
    07:12
  • 3. BUGGY CHASSIS. Beam Elements Definition and Materials.mp4
    06:31
  • 4. BUGGY CHASSIS. Joints Revision.mp4
    02:40
  • 5. BUGGY CHASSIS. Constraints and Loads for Max Bump.mp4
    05:04
  • 6. BUGGY CHASSIS. Beam Elements Meshing.mp4
    02:29
  • 7. BUGGY CHASSIS. Max Bump Results Review. Post-Process.mp4
    17:51
  • 8. BUGGY CHASSIS. RollOver Simulation.mp4
    17:02
  • 1. Conclusions and Next Steps.mp4
    02:54
  • Description


    Elevate your capabilities exponentially in FEA Simulation by the FINITE ELEMENT METHOD (FEM) with Real World Examples

    What You'll Learn?


    • Empower your career by managing the Finiete Element Analysis
    • Play the role of a Finite Element Analysis Engineer working on a real-world projects
    • Complete a whole simulation project from 0 with confidence
    • Get hints and tips to avoid common mistakes

    Who is this for?


  • Engineers, technicians and 3D designers who want to start their way in the FEA field
  • What You Need to Know?


  • Basic knowledge of SolidWorks CAD
  • No need to know about FEA
  • SolidWorks Licence 2022 or newer version
  • Willing to learn new skills to empower your professional career
  • More details


    Description

    Welcome to the Finite Element Analysis World!

    Let me first congratulate you to be interested in this amazing field which will empower your professional career to the next level.


    After my years of experience, I have could experience all the benefits for different industries when they use the Finite Element Method (FEM) during the development process.

    They produce better and efficient designs that means saving time and, the most important, saving MONEY.


    As the demand of FEA professionals is continuously increasing, we need to encourage people to join us in this field.

    For that, this course is designed to take you from a complete beginner in FEA to a confident simulation professional, equipped with all the essential skills.


    You'll learn how to define comprehensive simulation models using the most commonly used finite elements: SOLIDS, SHELLS, and BEAMS.


    Throughout the course, you will master the following techniques:


    • GEOMETRY OPTIMIZATION for simulations

      • How important is to have a correct and efficient model to obtain accurate results saving computational cost.

      • Understanding what is necessary for your simulation.


    • Customize your own MATERIALS LIBRARY

      • Today, FEA software offers a great range of materials to use in our simulations

      • To go one step further I will guide you to have your own customized material library to be available for your projects.


    • Applying BOUNDARY CONDITIONS effectively.

      • Understanding each problem to define the correct Fixtures and External Loads is an essential step.

      • It’s a big responsibility from our side to define correctly the BC to obtain a correct behavior of our models.

      • And doing this, we will be able to guarantee the correct behavior of the physic problem in the reality.


    • MESHING. How to create an accurate and appropriate mesh for your models.

      • This step is crucial in a Finite Element Analysis

      • Here we will understand what it means to use the Finite Element Method and how the differential equations are solved by the Method.

      • To have accurate results, we need to take care about the mesh of our model.

      • I will guide you to define what type of mesh is most efficient in each project depending of the necessities in each case.


    • RUNNING thorough analyses

      • Understanding the solver that we are using; we can guarantee the efficiently of the simulation and the accuracy of the results.

      • We will deep into detail of the particularities of each one.


    • Conducting comprehensive RESULT EVALUATIONS

      • Once we have prepared our model with care, we need to understand the results that the software is showing us.

      • We need to have the knowledge to believe in our results.

      • To do that we will review tool and I will give tips to assure a good postprocess of your models.


    Ok, that sounds great

    BUT,

    what sets this course apart?


    I will guide to simulate not just simple components.

    I want you to practice with examples based on REAL SCENARIOS.

    This means you'll easily internalize the concepts and gain practical understanding.


    We will go into detail on each project analyzing the particularities of each one and thus choosing the finite elements (solids, shells or beams) that best suits its modelling.

    This hands-on experience will significantly enhance your knowledge. Based on my years of experience, I can assure you that tackling real problems is the fastest way to learn and grow.

    All this for you to get the most out of this training and can soon join the FEA professionals who make the designs, that we will see tomorrow, better and much more efficient.


    So,

    Get ready to unlock your FEA potential and start simulating your own designs with confidence.

    I will guide you to assure you that confidence!

    See you inside!


    Who this course is for:

    • Engineers, technicians and 3D designers who want to start their way in the FEA field

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    Carlos Aragonés
    Carlos Aragonés
    Instructor's Courses
    Hi there, I’m Carlos!I’m a Mechanical Engineer with over 10 years of experience in FEA Simulation across various sectors including automotive, energy, and manufacturing.I help customers to validate, optimize and improve their designs. How?First, my specialized training courses are designed to give you practical skills that apply to real-world scenarios.Secondly, if you’re short on time, I’m here to help. As a Mechanical Engineer specialized in product development, I’m happy to validate your designs.Let’s work together to enhance your designs and achieve your goals. Feel free to reach out with any questions
    Students take courses primarily to improve job-related skills.Some courses generate credit toward technical certification. Udemy has made a special effort to attract corporate trainers seeking to create coursework for employees of their company.
    • language english
    • Training sessions 65
    • duration 7:10:15
    • Release Date 2023/12/15

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